反激动剂
化学
卡帕
κ-阿片受体
兴奋剂
逮捕
受体
机制(生物学)
药理学
G蛋白偶联受体
立体化学
类阿片
生物化学
医学
哲学
认识论
语言学
作者
Jaehoon Jung,In Hee Jang,Moon Young Yang,Sunhong Kim,Soo‐Kyung Kim,William A. Goddard,Yong‐Chul Kim
标识
DOI:10.1021/acs.jmedchem.3c00064
摘要
Chronic exposure to stress or unwanted stimuli has been known to activate kappa opioid receptor/dynorphin (KOR/DYN) systems, which could induce depressive states and develop into some psychiatric disorders. Here, we report the first discovery of pyrazoloisoquinoline-based novel KOR β-arrestin inverse agonists through synthesis, structure–activity relationships, optimization, and the biological evaluations of μ/κ/δ opioid receptor activities with cAMP and β-arrestin recruitment assays. The optimized compound 7q shows potent and selective β-arrestin inverse agonism at KOR with an EC50 value of 9.33 nM in contrast to lower activities at DOR and no activity at MOR. Moreover, we use molecular dynamics simulations to predict the binding mode of the inverse agonist and propose a mechanism for the inverse agonism. We find that the transmembrane helix 6 position of the activated state is different for the OR subtypes, leading to significantly different interactions between the receptor and β-arrestin.
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